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下肢肌肉骨骼几何结构会影响垂直跳跃和举重时髌股关节力的计算。

Lower-extremity musculoskeletal geometry affects the calculation of patellofemoral forces in vertical jumping and weightlifting.

作者信息

Cleather D I, Bull A M J

机构信息

School of Human Sciences, St. Mary's University College, UK.

出版信息

Proc Inst Mech Eng H. 2010;224(9):1073-83. doi: 10.1243/09544119JEIM731.

Abstract

The calculation of the patellofemoral joint contact force using three-dimensional (3D) modelling techniques requires a description of the musculoskeletal geometry of the lower limb. In this study, the influence of the complexity of the muscle model was studied by considering two different muscle models, the Delp and Horsman models. Both models were used to calculate the patellofemoral force during standing, vertical jumping, and Olympic-style weightlifting. The patellofemoral forces predicted by the Horsman model were markedly lower than those predicted by the Delp model in all activities and represented more realistic values when compared with previous work. This was found to be a result of a lower level of redundancy in the Delp model, which forced a higher level of muscular activation in order to allow a viable solution. The higher level of complexity in the Horsman model resulted in a greater degree of redundancy and consequently lower activation and patellofemoral forces. The results of this work demonstrate that a well-posed muscle model must have an adequate degree of complexity to create a sufficient independence, variability, and number of moment arms in order to ensure adequate redundancy of the force-sharing problem such that muscle forces are not overstated.

摘要

使用三维(3D)建模技术计算髌股关节接触力需要对下肢的肌肉骨骼几何结构进行描述。在本研究中,通过考虑两种不同的肌肉模型——德尔普(Delp)模型和霍斯曼(Horsman)模型,研究了肌肉模型复杂性的影响。两种模型均用于计算站立、垂直跳跃和奥运式举重过程中的髌股力。在所有活动中,霍斯曼模型预测的髌股力均明显低于德尔普模型预测的髌股力,并且与之前的研究相比,其代表的值更符合实际情况。研究发现,这是由于德尔普模型的冗余度较低,这迫使肌肉激活水平更高才能得出可行的解决方案。霍斯曼模型更高的复杂性导致了更大程度的冗余,从而降低了激活程度和髌股力。这项工作的结果表明,一个恰当的肌肉模型必须具有足够的复杂性,以产生足够的独立性、变异性和力臂数量,从而确保力分配问题有足够的冗余度,以使肌肉力不会被高估。

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